English
 
Help Privacy Policy Disclaimer
  Advanced SearchBrowse

Item

ITEM ACTIONSEXPORT
 
 
DownloadE-Mail
  von Willebrand disease type 2A phenotypes IIC, IID and IIE: A day in the life of shear-stressed mutant von Willebrand factor

Brehm, M. A., Huck, V., Aponte-Santamaría, C., Obser, T., Grässle, S., Oyen, F., et al. (2014). von Willebrand disease type 2A phenotypes IIC, IID and IIE: A day in the life of shear-stressed mutant von Willebrand factor. Thrombosis and Haemostasis, 112(1), 96-108. doi:10.1160/TH13-11-0902.

Item is

Files

show Files

Locators

show

Creators

show
hide
 Creators:
Brehm, M. A.1, Author
Huck, V.2, Author
Aponte-Santamaría, C.3, Author
Obser, T.1, Author
Grässle, S.2, Author
Oyen, F.1, Author
Budde, U.4, Author
Schneppenheim, S.4, Author
Baldauf, Carsten5, Author           
Gräter, F.3, Author
Schneider, S. W.2, Author
Schneppenheim, R.1, Author
Affiliations:
1Department of Pediatric Hematology and Oncology, University Medical Center, Hamburg-Eppendorf, Hamburg, Germany, ou_persistent22              
2Experimental Dermatology Division, Department of Dermatology, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany , ou_persistent22              
3Heidelberger Institut für Theoretische Studien, Heidelberg, Germany, ou_persistent22              
4MEDILYS Laborgesellschaft mbH, Hemostaseology, Asklepios Klinik Altona, Hamburg, Germany, ou_persistent22              
5Theory, Fritz Haber Institute, Max Planck Society, ou_634547              

Content

show
hide
Free keywords: von Willebrand factor, molecular dynamics simulations, VWD, shear flow, microfluidic
 Abstract: The bleeding disorder von Willebrand disease (VWD) is caused by mutations of von Willebrand factor (VWF), a multimeric glycoprotein essential for platelet-dependent primary haemostasis. VWD type 2A-associated mutations each disrupt VWF biosynthesis and function at different stages, depending on the VWF domain altered by the mutation. These effects cause considerable heterogeneity in phenotypes and symptoms. To characterise the molecular mechanisms underlying the specific VWF deficiencies in VWD 2A/IIC, IID and IIE, we investigated VWF variants with patient-derived mutations either in the VWF pro-peptide or in domains D3 or CK. Additionally to static assays and molecular dynamics (MD) simulations we used microfluidic approaches to perform a detailed investigation of the shear-dependent function of VWD 2A mutants. For each group, we found distinct characteristics in their intracellular localisation visualising specific defects in biosynthesis which are correlated to respective multimer patterns. Using microfluidic assays we further determined shear flow-dependent characteristics in polymer-platelet-aggregate formation, platelet binding and string formation for all mutants. The phenotypes observed under flow conditions were not related to the mutated VWF domain. By MD simulations we further investigated how VWD 2A/IID mutations might alter the ability of VWF to form carboxy-terminal dimers. In conclusion, our study offers a comprehensive picture of shear-dependent and shear-independent dysfunction of VWD type 2A mutants. Furthermore, our microfluidic assay might open new possibilities for diagnosis of new VWD phenotypes and treatment choice for VWD patients with shear-dependent VWF dysfunctions that are currently not detectable by static tests.

Details

show
hide
Language(s): eng - English
 Dates: 2014-03-062014-07
 Publication Status: Issued
 Pages: 13
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1160/TH13-11-0902
 Degree: -

Event

show

Legal Case

show

Project information

show

Source 1

show
hide
Title: Thrombosis and Haemostasis
  Other : Thromb. Haemost.
Source Genre: Journal
 Creator(s):
Affiliations:
Publ. Info: Stuttgart : F.K. Schattauer.
Pages: - Volume / Issue: 112 (1) Sequence Number: - Start / End Page: 96 - 108 Identifier: ISSN: 0340-6245
CoNE: https://pure.mpg.de/cone/journals/resource/954927656934